Showing 201 - 220 results of 1,033 for search '(( significant decrease decrease ) OR ( significant rise decrease ))~', query time: 0.31s Refine Results
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    Projected global leukemia burden, 1990-2050. by Chengjun Hu (588206)

    Published 2025
    “…Conclusion: Although there has been a marked decrease in global leukemia incidence, mortality, and DALYs over the past 31 years, the rise in new cases due to population growth suggests an increasing overall disease burden by 2050. …”
  5. 205

    Correlation between HDI and EAPC. by Chengjun Hu (588206)

    Published 2025
    “…Conclusion: Although there has been a marked decrease in global leukemia incidence, mortality, and DALYs over the past 31 years, the rise in new cases due to population growth suggests an increasing overall disease burden by 2050. …”
  6. 206

    Global leukemia incidence and EAPC, 1990-2021. by Chengjun Hu (588206)

    Published 2025
    “…Conclusion: Although there has been a marked decrease in global leukemia incidence, mortality, and DALYs over the past 31 years, the rise in new cases due to population growth suggests an increasing overall disease burden by 2050. …”
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    Numerical simulation data. by Qingsong Zhang (3353270)

    Published 2024
    “…Initially, the decay follows a logarithmic pattern, whereas, at later stages, the attenuation exhibits a gradual and smooth decrease. As the frequency increases, the initial attenuation amplitude of electromagnetic wave intensity rises; however, subsequent attenuation is largely unaffected by frequency, with the later attenuation rate being proportional to porosity. …”
  15. 215

    Fig 4 - by Qingsong Zhang (3353270)

    Published 2024
    “…Initially, the decay follows a logarithmic pattern, whereas, at later stages, the attenuation exhibits a gradual and smooth decrease. As the frequency increases, the initial attenuation amplitude of electromagnetic wave intensity rises; however, subsequent attenuation is largely unaffected by frequency, with the later attenuation rate being proportional to porosity. …”
  16. 216

    Porosity model. by Qingsong Zhang (3353270)

    Published 2024
    “…Initially, the decay follows a logarithmic pattern, whereas, at later stages, the attenuation exhibits a gradual and smooth decrease. As the frequency increases, the initial attenuation amplitude of electromagnetic wave intensity rises; however, subsequent attenuation is largely unaffected by frequency, with the later attenuation rate being proportional to porosity. …”
  17. 217

    Signal intensity curves at 0.2 and 0.4 porosity. by Qingsong Zhang (3353270)

    Published 2024
    “…Initially, the decay follows a logarithmic pattern, whereas, at later stages, the attenuation exhibits a gradual and smooth decrease. As the frequency increases, the initial attenuation amplitude of electromagnetic wave intensity rises; however, subsequent attenuation is largely unaffected by frequency, with the later attenuation rate being proportional to porosity. …”
  18. 218

    Interior diagram of goaf simulation platform. by Qingsong Zhang (3353270)

    Published 2024
    “…Initially, the decay follows a logarithmic pattern, whereas, at later stages, the attenuation exhibits a gradual and smooth decrease. As the frequency increases, the initial attenuation amplitude of electromagnetic wave intensity rises; however, subsequent attenuation is largely unaffected by frequency, with the later attenuation rate being proportional to porosity. …”
  19. 219

    EM wave transmission in coal-rock media. by Qingsong Zhang (3353270)

    Published 2024
    “…Initially, the decay follows a logarithmic pattern, whereas, at later stages, the attenuation exhibits a gradual and smooth decrease. As the frequency increases, the initial attenuation amplitude of electromagnetic wave intensity rises; however, subsequent attenuation is largely unaffected by frequency, with the later attenuation rate being proportional to porosity. …”
  20. 220

    Simulation platform experimental data. by Qingsong Zhang (3353270)

    Published 2024
    “…Initially, the decay follows a logarithmic pattern, whereas, at later stages, the attenuation exhibits a gradual and smooth decrease. As the frequency increases, the initial attenuation amplitude of electromagnetic wave intensity rises; however, subsequent attenuation is largely unaffected by frequency, with the later attenuation rate being proportional to porosity. …”